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Advanced Optical Materials

Advanced Optical Materials杂志,由John Wiley and Sons Inc.出版,于2013年创刊,24 issues/year,出版语言English,ISSN:2195-1071,E-ISSN:2195-1071。

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Advanced Optical Materials
Advanced Optical Materials
Advanced Optical Materials
SCI SCIE EI

杂志介绍

JCR分区
Q1
中科院分区
2区
影响因子
7.2
CiteScore
12.1
期刊收录
SCI、SCIE、EI

Advanced Optical Materials(中文译名:《先进光学材料》),ISSN:2195-1071,EISSN:2195-1071,是John Wiley and Sons Inc.出版的国际性学术期刊,创刊于2013年,以24 issues/year形式稳定发行,2026年总发文量约1270篇。该刊采用非OA开放访问,学科归属为MATERIALS SCIENCE, MULTIDISCIPLINARY - OPTICS。该刊是材料科学、材料科学综合领域的国际权威刊物,已被SCI(科学引文索引)、SCIE(科学引文索引扩展版)、EI(工程索引)等国际主流学术数据库收录。2026年期刊影响因子达7.2,2025年期刊CiteScore为12.1,2025年期刊自引率约5.6%,在中科院期刊分区体系中位列材料科学大类2区,在所属学科领域具备高学术影响力与国际认可度。Advanced Optical Materials长期聚焦材料科学、材料科学综合及相关产业的技术应用前沿,在稿件录用评判中,该刊将创新性与前沿性作为核心遴选标准,重点收录能够对材料科学、材料科学综合领域的落地与发展产生实质性推动价值的研究成果。

从全球发文格局来看,CHINA MAINLANDUSA、South Korea、GERMANY (FED REP GER)、Singapore、Australia、England等为核心发文国家与地区;

期刊评价

名词解释:

影响因子(Impact Factor, IF):指该期刊前两年发表的文章,在第三年的平均被引用次数。它反映了期刊的近期平均影响力和热度。

中科院分区:中科院分区表是国内主流的学术期刊分级评价工具,核心意义是建立跨学科可比的统一评价标尺,为职称评审、学位授予、科研立项等科研管理工作提供标准化量化依据,同时帮助科研人员筛选优质期刊、规避学术风险,适配国内本土化的科研评价需求。

期刊分区表

《新锐期刊分区表》(2026年3月发布)

大类学科 小类学科 Top期刊 综述期刊
材料科学
2区
MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 OPTICS 光学
2区 2区

期刊分区表(2025年3月升级版)

大类学科 小类学科 Top期刊 综述期刊
材料科学
2区
MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 OPTICS 光学
2区 2区

期刊分区表(2023年12月升级版)

大类学科 小类学科 Top期刊 综述期刊
材料科学
2区
MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 OPTICS 光学
2区 2区

JCR分区

2025-2026年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 115 / 472

75.7

学科:OPTICS SCIE Q1 15 / 129

88.8

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 66 / 473

86.15

学科:OPTICS SCIE Q1 17 / 129

87.21

2023-2024年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 75 / 438

83

学科:OPTICS SCIE Q1 10 / 119

92

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 46 / 438

89.61

学科:OPTICS SCIE Q1 12 / 120

90.42


中国学者近期发文

1
Local Excitation Dominance Governs the Photophysics of Hemi-Cyanine Dyes: Structural Modulation and Fluorescence Sensing of Butyrylcholinesteras

Author:Zhou, Li-Pan; Zhu, Ling-Ao; Ji, Meng-Han; Li, Hao-Yang; Liu, Zhi-Hui; Song, Zhi-Guang; Feng, Guo-Dong

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 15, pp. -. DOI: 10.1002/adom.71190

2
25.7 lp/mm High-Resolution X-Ray Imaging Using Robust Zero-Dimensional Copper Halide Nanoarray Screen

Author:Hui, Yangshuqin; Song, Xiaoyu; Zhang, Danwen; Zhu, Siqi; Chen, Guoyu; Liu, Yang; Shuai, Jing; Zheng, Wei

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 15, pp. -. DOI: 10.1002/adom.202503527

3
Thickness-Engineered 2D NbSe2/SnS2 Nanosheet Heterostructures for Enhanced Self-Powered Broadband Photodetectio

Author:Kumar, Mahesh; Saravanan, Adhimoorthy; Chen, Sheng-Chi; Myoung, Jae-Min; Sun, Hui

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 15, pp. -. DOI: 10.1002/adom.71187

4
Acrylic Acid-Enabled Indium Phosphide-Based Quantum Dot Inks for High-Resolution Electrohydrodynamic Patternin

Author:Huang, Yixiao; Zhang, Hezixuan; Bao, Huili; Sun, Jie; Jiang, Jiali; Han, Runnian; Wang, Keke; Tang, Jianguo; Du, Zhonglin

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 16, pp. -. DOI: 10.1002/adom.202503703

5
Efficient Solar-Driven Polymerization Enabled by Triplet Excited State-Mediated Electron Transfer in Benzothioxanthene Imide Photocatalyst

Author:Li, Weiqiang; Nian, Zhiyao; Gao, Junwen; Liu, Zhaoxi; Mahmood, Zafar; Ye, Zecong; Liang, Hui; Xu, Guoxing; Sun, Yuxi; Huo, Yanping; Ji, Shaomin

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 16, pp. -. DOI: 10.1002/adom.71198

6
Tuning Short-wavelength Cutoff in Chalcogenide Hybrid Inorganic/Organic Polymers Glass via π-conjugated Monomer

Author:Zhang, Zhenyu; Gao, Chengwei; Shao, Yuxin; Jiao, Qing; Tan, Linling; Kang, Shiliang; Xie, Ying; Yu, Xiaochang; Dai, Shixun; Zhou, Gang; Wang, Zhiyu; Lin, Changgui

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 14, pp. -. DOI: 10.1002/adom.202503092

7
Monitoring Visually Monomeric Conversion and Polymeric Polarity Change of Photocurable Process as Well as Fabricating Antibacterial Polymer Based on AIE-Active Type I Photosensitize

Author:Tang, Yiwen; Dai, Wenxin; Chen, Xin; Lv, Licheng; Gan, Xin; Wu, Yunchun; Wan, Qing; Liang, Hongbo

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 14, pp. -. DOI: 10.1002/adom.202503533

8
Self-powered Spectrophotometer based on a Bicontinuous Network Photocathode for Concentration Quantification via the Solution Filter Effec

Author:Long, Yongde; Bai, Tingting; Liu, Wei; Wang, Dan; Bai, Jiaxin; Jiang, Yuqin; Hu, Chuangang

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 14, pp. -. DOI: 10.1002/adom.71171

9
Explainable Machine Learning for Solvents-Driven G-quartet Circularly Polarized Luminescence Material in Multilevel Anti-counterfeitin

Author:Yan, Xuetao; Chen, Lifei; Ren, Yuze; Cui, Kaixuan; Li, Tianliang; Lin, Lixing; Li, Zeyu; Song, Haicheng; Chen, Yingying; Li, Zhenzhen; Feng, Lingyan

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 15, pp. -. DOI: 10.1002/adom.71180

10
Electrostatically Programmable Terahertz Metadevice for Parallel Opto-Logic Function

Author:Lin, Yu-Sheng; Li, Jiahao; Zhu, Yunche

Journal: ADVANCED OPTICAL MATERIALS. 2026; Vol. 14, Issue 15, pp. -. DOI: 10.1002/adom.71178


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Advanced Optical Materials

国际简称:ADV OPT MATER参考译名:先进光学材料

年发文量:1270 CiteScore:12.1 是否预警:否 Gold OA文章占比:23.72% 研究类文章占比:92.76%

杂志社联系方式:POSTFACH 101161, WEINHEIM, GERMANY, 69451

Advanced Optical Materials